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A PSFB-Based Integrated PEV Onboard Charger With Extended ZVS Range and Zero Duty Cycle Loss

机译:具有扩展ZVS范围和零占空比损耗的基于PSFB的集成PEV车载充电器

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摘要

A conventional phase-shift full-bridge (PSFB) converter suffers from easy failure of zero-voltage switching (ZVS) in the lagging leg under light load conditions. This poses a significant challenge to the optimal design of PSFB-based plug-in electric vehicle (PEV) onboard chargers. In this paper, a self-reconfigured integrated onboard charger architecture is proposed for PEVs to cope with this design challenge. In this architecture, the PSFB converter is adopted as the main topology to charge the high-voltage battery pack, while the half-bridge LLC resonant converter is employed to charge the low-voltage auxiliary battery. Under light-charging mode, the half-bridge LLC converter is reconfigured to be paralleled with the PSFB topology to guarantee the ZVS of the lagging leg MOSFETs. Moreover, a capacitor-diode-diode snubber is added to resolve the duty cycle loss issue of the PSFB converter and to reduce the circulating current. Practical design considerations are presented for both the PSFB and the half-bridge LLC converters. Frequency modulation and the phase-shift modulation provide two degrees of freedom to regulate the output voltage/current of both converters. The proposed charger architecture maintains low cost and high efficiency in this specific application. A 390 V input, 420 V/2.4 A, 14 V/21 A outputs, 1.3 kW rated converter prototype is designed, analyzed, and tested to verify the proof of concept.
机译:常规相移全桥(PSFB)转换器在轻载条件下在滞后桥臂中容易发生零电压开关(ZVS)故障。这对基于PSFB的插入式电动汽车(PEV)车载充电器的优化设计提出了重大挑战。在本文中,针对PEV提出了一种自我重新配置的集成车载充电器架构,以应对这一设计挑战。在这种体系结构中,采用PSFB转换器作为主要拓扑结构来为高压电池组充电,而采用半桥LLC谐振转换器来为低压辅助电池充电。在充电模式下,半桥LLC转换器被重新配置为与PSFB拓扑并联,以保证滞后支路MOSFET的ZVS。此外,增加了一个电容-二极管-二极管缓冲器,以解决PSFB转换器的占空比损耗问题并减少循环电流。提出了PSFB和半桥LLC转换器的实用设计注意事项。频率调制和相移调制提供两个自由度,以调节两个转换器的输出电压/电流。所提出的充电器架构在该特定应用中保持了低成本和高效率。设计,分析和测试了390 V输入,420 V / 2.4 A,14 V / 21 A输出,1.3 kW额定转换器原型,以验证概念验证。

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